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Host–guest selectivity in a series of isoreticular metal–organic frameworks: observation of acetylene-to-alkyne and carbon dioxide-to-amide interactions

机译:在一系列等网状金属-有机骨架中的主客体选择性:观察乙炔与炔烃以及二氧化碳与酰胺的相互作用

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摘要

In order to develop new porous materials for applications in gas separations such as natural gas upgrading, landfill gas processing and acetylene purification it is vital to gain understanding of host–substrate interactions at a molecular level. Herein we report a series of six isoreticular metal–organic frameworks (MOFs) for selective gas adsorption. These materials do not incorporate open metal sites and thus provide an excellent platform to investigate the effect of the incorporation of ligand functionality via amide and alkyne groups on substrate binding. By reducing the length of the linker in our previously reported MFM-136, we report much improved CO2/CH4 (50 : 50) and CO2/N2 (15 : 85) selectivity values of 20.2 and 65.4, respectively (1 bar and 273 K), in the new amide-decorated MOF, MFM-126. The CO2 separation performance of MFM-126 has been confirmed by dynamic breakthrough experiments. In situ inelastic neutron scattering and synchrotron FT-IR microspectroscopy were employed to elucidate dynamic interactions of adsorbed CO2 molecules within MFM-126. Upon changing the functionality to an alkyne group in MFM-127, the CO2 uptake decreases but the C2H2 uptake increases by 68%, leading to excellent C2H2/CO2 and C2H2/CH4 selectivities of 3.7 and 21.2, respectively. Neutron powder diffraction enabled the direct observation of the preferred binding domains in MFM-126 and MFM-127, and, to the best of our knowledge, we report the first example of acetylene binding to an alkyne moiety in a porous material, with over 50% of the acetylene observed within MFM-127 displaying interactions (<4 Å) with the alkyne functionality of the framework.
机译:为了开发用于气体分离的新多孔材料,例如天然气提质,垃圾填埋气处理和乙炔纯化,重要的是要在分子水平上了解基质与基质的相互作用。在这里,我们报告了一系列六个用于选择性气体吸附的等孔金属-有机骨架(MOF)。这些材料不包含开放的金属位点,因此提供了一个极好的平台来研究通过酰胺和炔基引入配体官能团对底物结合的影响。通过减少我们先前报道的MFM-136中接头的长度,我们报告了CO2 / CH4(50:50)和CO2 / N2(15:85)选择性值分别大大提高了20.2和65.4(1 bar和273 K) ),在新的酰胺修饰MOF MFM-126中。动态突破实验已经证实了MFM-126的CO2分离性能。原位非弹性中子散射和同步加速器FT-IR显微光谱用于阐明MFM-126中吸附的CO2分子的动态相互作用。在MFM-127中将功能更改为炔烃基团后,CO2吸收减少,但C2H2吸收增加68%,分别导致出色的C2H2 / CO2和C2H2 / CH4选择性分别为3.7和21.2。中子粉末衍射可以直接观察MFM-126和MFM-127中的首选结合结构域,据我们所知,我们报道了乙炔与多孔材料中炔烃部分结合的第一个例子,其中50个以上在MFM-127中观察到的乙炔的%,显示与框架的炔烃官能团相互作用(<4Å)。

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